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D1946

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DAF-FM DA

≥98% (HPLC)

Sinônimo(s):

4-Amino-5-(N-methylamino)-3′,6′-bis(acetyloxy)-2′,7′-difluoro-spiro[isobenzofuran-1(3H),9′-[9H]xanthen]-3-one, Diaminofluorescein-FM diacetate

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About This Item

Fórmula empírica (Notação de Hill):
C25H18F2N2O7
Número CAS:
Peso molecular:
496.42
Número MDL:
Código UNSPSC:
12352200
ID de substância PubChem:
NACRES:
NA.77

Nível de qualidade

Ensaio

≥98% (HPLC)

forma

film

condição de armazenamento

desiccated

cor

colorless to yellow

fluorescência

λex 500 nm; λem 515 nm in DMSO

Condições de expedição

wet ice

temperatura de armazenamento

−20°C

cadeia de caracteres SMILES

CNc1ccc2c(c1N)C(=O)OC23c4cc(F)c(OC(C)=O)cc4Oc5cc(OC(C)=O)c(F)cc35

InChI

1S/C25H18F2N2O7/c1-10(30)33-20-8-18-13(6-15(20)26)25(12-4-5-17(29-3)23(28)22(12)24(32)36-25)14-7-16(27)21(34-11(2)31)9-19(14)35-18/h4-9,29H,28H2,1-3H3

chave InChI

BEVHTVRRVVEMEF-UHFFFAOYSA-N

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Aplicação

DAF-FM DA has been used to measure the nitric oxide (NO) levels in liver tissue homogenates. It has also been used in NO staining for detection of NO from human umbilical vein endothelial cells (HUVECs).

Ações bioquímicas/fisiológicas

DAF-FM DA is a cell-permeable fluorescent probe for the detection of nitric oxide (NO). DAF-2 is the original compound and is widely used, but DAF-FM and DAF-FM DA are more sensitive to nitric oxide (NO) compared with DAF-2 and more photo-stable and less pH sensitive. DAF-FM DA permeates well into living cells and is rapidly transformed into water-soluble DAF-FM by cytosolic esterases.

Características e benefícios

This compound is featured on the Nitric Oxide Synthases page of the Handbook of Receptor Classification and Signal Transduction. To browse other handbook pages, click here.

Atenção

Hygroscopic

Código de classe de armazenamento

11 - Combustible Solids

Classe de risco de água (WGK)

WGK 3

Ponto de fulgor (°F)

Not applicable

Ponto de fulgor (°C)

Not applicable


Certificados de análise (COA)

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Verena K Capellini et al.
PloS one, 8(5), e62887-e62887 (2013-05-22)
It has been known for more than a century that pH changes can alter vascular tone. However, there is no consensus about the effects of pH changes on vascular response. In this study, we investigated the effects of extracellular pH
Good hydration and cell-biological performances of superparamagnetic calcium phosphate cement with concentration-dependent osteogenesis and angiogenesis induced by ferric iron
Zhang J, et al
Journal of Material Chemistry B: Materials for Biology and Medicine, 3(45), 8782-8795 (2015)
You Jin Lim et al.
Food chemistry, 303, 125376-125376 (2019-08-24)
This study investigated the effects of persistent ultraviolet B (UV-B) irradiation on isoflavone accumulation in soybean sprouts. Three malonyl isoflavones were increased by UV-B. Malonylgenistin specifically accumulated upon UV-B exposure, whereas the other isoflavones were significantly increased under both dark
Bin Li et al.
Journal of aging research, 2011, 673185-673185 (2011-05-18)
Calorie restriction (CR) induces a metabolic shift towards mitochondrial respiration; however, molecular mechanisms underlying CR remain unclear. Recent studies suggest that CR-induced mitochondrial activity is associated with nitric oxide (NO) production. To understand the role of mitochondria in CR, we
Shaoting Du et al.
Journal of experimental botany, 67(3), 893-904 (2015-11-27)
CO2 elevation often alters the plant's nitrate reductase (NR) activity, the first enzyme acting in the nitrate assimilation pathway. However, the mechanism underlying this process remains unknown. The association between elevated CO2-induced alterations of NR activity and nitric oxide (NO)

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